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作 者:王珊[1] 蔡大勇[2] 张春玲[2] 高德东[1]
机构地区:[1]青海大学机械系,青海西宁810016 [2]燕山大学材料科学与工程学院,河北秦皇岛066004
出 处:《热加工工艺》2009年第22期33-35,共3页Hot Working Technology
基 金:青海大学中青年科研基金资助项目(2008-QG-05)
摘 要:采用Gleeble-3500热模拟实验机,在变形温度为850~1100℃、应变速率为5 s-1、道次间隔时间为1~1000 s的实验条件下,通过双道次压缩试验,研究了Cu-P-Cr-Ni-Mo耐候钢的静态软化行为。结果表明,其静态软化率随变形温度的升高和道次间隔时间的延长而不断增加。应用后插法计算了在不同真应变条件下的静态软化率。对静态软化率进行回归分析,求得Cu-P-Cr-Ni-Mo耐候钢静态再结晶激活能Qrex为256 kJ/mol。The static softening behavior of Cu-P-Cr-Ni-Mo weathering steel was studied on Gleeble-3500 by double-stage hot compression experiment. The static softening ratio of weathering steel was determined in the conditions of deformation temperature range from 850℃ to 1100℃, strain rate of 5 s^-1 and interval time range from ls to 1000 s. The results show that the softening ratio increases with the increase of deformation temperature and interval time. The static softening ratio under different strain is estimated by means of back-extrapolation. Through regression analysis, the static recrystallization activation energy (Qrex)ofCu-P-Cr-Ni-Mo weathering steel is 256 kJ/mol.
分 类 号:TG142.2[一般工业技术—材料科学与工程]
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